Silibinin alleviates inflammation‐induced bone loss by modulating biological interaction between human gingival fibroblasts and monocytes

Author:

Huang Ren‐Yeong1ORCID,Chang Hua‐Yang12,Chih Shu‐Mi12,Dyke Thomas Van34,Cheng Chia‐Dan12,Sung Cheng‐En1,Weng Pei‐Wei56,Shieh Yi‐Shing7,Cheng Wan‐Chien1

Affiliation:

1. Department of Periodontology, School of Dentistry Tri‐Service General Hospital and National Defense Medical Center Taipei Taiwan

2. Graduate Institute of Dental Sciences National Defense Medical Center Taipei Taiwan

3. Oral Medicine, Infection, and Immunity Harvard School of Dental Medicine Boston Massachusetts USA

4. Department of Applied Oral Sciences The Forsyth Institute Cambridge Massachusetts USA

5. Department of Orthopedics Shuang Ho Hospital Taipei Medical University New Taipei City Taiwan

6. Department of Orthopedics College of Medicine Taipei Medical University Taipei Taiwan

7. Department of Operative Dentistry and Endodontics School of Dentistry Tri‐Service General Hospital and National Defense Medical Center Taipei Taiwan

Abstract

AbstractBackgroundSilibinin has shown various pharmacological effects that could be attributed to its antioxidant, anti‐inflammatory, and immunoregulatory properties. However, the therapeutic potential of silibinin for periodontitis has not been investigated.MethodsThe therapeutic effects of silibinin in ligation‐induced experimental periodontitis were investigated using biochemical, histological, and immunohistochemical methods. The effects of silibinin on the osteoclastogenesis of RAW264.7 cells were investigated using TRAP staining, quantitative polymerase chain reaction (qPCR), pit formation, and immunoblotting. Moreover, its effects on inflammatory cytokine production, RANKL expression, and oxidative stress in lipopolysaccharide (LPS)‐stimulated human gingival fibroblasts (HGFs) were evaluated using qPCR and flow cytometry. A coculture system was established to elucidate the effects of silibinin on the crosstalk between LPS‐stimulated HGFs and undifferentiated monocytes.ResultsSilibinin significantly reduced the alveolar bone loss, decreased the gingival inflammation and RANKL expression, and decreased the RANKL/osteoprotegerin ratio in gingival tissues in experimental periodontitis. The in vitro results showed that silibinin inhibited RANKL‐induced osteoclast differentiation and function of RAW264.7 cells and suppressed RANKL‐induced nuclear factor of activated T cells 1 (NFATc1) induction and translocation through the nuclear factor‐κB and mitogen‐activated protein kinase signaling pathways. Silibinin decreased the inflammatory cytokine level and oxidative stress production in LPS‐stimulated HGFs; significantly suppressed membrane‐bound RANKL expression on LPS‐stimulated HGFs; and significantly disrupted TRAP+ cell differentiation in the coculture system.ConclusionsSilibinin effectively inhibits inflammation‐induced bone loss in experimental periodontitis based on the regulation of stimulated HGFs by inhibiting the expression of inflammatory and osteoclastogenic mediators. Collectively, targeting the inflamed HGF resolution that mediates osteogenesis may use silibinin as a potential drug‐repurposing candidate for modulating alveolar bone destruction in periodontitis.SummarySilibinin effectively inhibits inflammation‐induced bone loss in experimental periodontitis based on the regulation of stimulated HGFs by inhibiting the expression of inflammatory and osteoclastogenic mediators.

Funder

Ministry of National Defense

Publisher

Wiley

Subject

Periodontics,General Medicine

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